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Functional divergence of duplicate genes several million years after gene duplication in Arabidopsis

机译:在拟南芥中基因复制后几百百万年的二百万年的功能分歧

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Lineage-specific duplicated genes likely contribute to the phenotypic divergence in closely related species. However, neither the frequency of duplication events nor the degree of selection pressures immediately after gene duplication is clear in the speciation process. Here, using Illumina DNA-sequencing reads from Arabidopsis halleri, which has multiple closely related species with high-quality genome assemblies (A. thaliana and A. lyrata), we succeeded in generating orthologous gene groups in Brassicaceae. The duplication frequency of retained genes in the Arabidopsis lineage was similar to 10 times higher than the duplication frequency inferred by comparative genomics of Arabidopsis, poplar, rice and moss (Physcomitrella patens). The difference of duplication frequencies can be explained by a rapid decay of anciently duplicated genes. To examine the degree of selection pressure on genes duplicated in either the A. halleri-lyrata or the A. halleri lineage, we examined positive and purifying selection in the A. halleri-lyrata and A. halleri lineages throughout the ratios of nonsynonymous to synonymous substitution rates (K-A/K-S). Duplicate genes tended to have a higher proportion of positive selection compared with non-duplicated genes. Interestingly, we found that functional divergence of duplicated genes was accelerated several million years after gene duplication compared with immediately after gene duplication.
机译:谱系特异性重复基因可能导致密切相关的物种中的表型分歧。然而,在物种过程中,在基因重复后,重复事件的频率也不立即选择压力。在这里,使用来自Arabidopsis Holleri的Illumina DNA测序,其具有多种与高质量的基因组组装(A. Thilanaa和A. Lyrata)的密切相关的物种,我们成功地在Brassicaceae产生了立外科基因组。拟南芥谱系中保留基因的重复频率类似于拟南芥,杨树,水稻和苔藓(Physcomitrella Patens)的比较基因组学推断的重复频率高的10倍。复制频率的差异可以通过古代重复的基因的快速衰减来解释。检查在A. Halleri-Lyrata或A. Halleri血统中复制的基因上的选择压力程度,我们在Nonsynonymous的比例中审查了A. Halleri-Lyrata和A. Halleri Lineages中的肯定和净化选择替代率(Ka / Ks)。与非重复基因相比,重复基因倾向于具有更高比例的阳性选择。有趣的是,在基因重复后,在基因重复后,基因重复后,我们发现重复基因的功能性分歧加速了几百万年。

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